Coalescence of Liquid Drops: Different Models Versus Experiment
arXiv:1211.7212 · doi:10.1063/1.4773067
Abstract
The process of coalescence of two identical liquid drops is simulated numerically in the framework of two essentially different mathematical models, and the results are compared with experimental data on the very early stages of the coalescence process reported recently. The first model tested is the `conventional' one, where it is assumed that coalescence as the formation of a single body of fluid occurs by an instant appearance of a liquid bridge smoothly connecting the two drops, and the subsequent process is the evolution of this single body of fluid driven by capillary forces. The second model under investigation considers coalescence as a process where a section of the free surface becomes trapped between the bulk phases as the drops are pressed against each other, and it is the gradual disappearance of this `internal interface' that leads to the formation of a single body of fluid and the conventional model taking over. Using the full numerical solution of the problem in the framework of each of the two models, we show that the recently reported electrical measurements probing the very early stages of the process are better described by the interface formation/disappearance model. New theory-guided experiments are suggested that would help to further elucidate the details of the coalescence phenomenon. As a by-product of our research, the range of validity of different `scaling laws' advanced as approximate solutions to the problem formulated using the conventional model is established.
References in corpus (6)
- Viscous to Inertial Crossover in Liquid Drop Coalescence
- The inexorable resistance of inertia determines the initial regime of drop coalescence
- Coalescence in low-viscosity liquids
- The Dynamics of Liquid Drops and their Interaction with Solids of Varying Wettabilites
- Finite Element Simulation of Dynamic Wetting Flows as an Interface Formation Process
- Coalescence of Low-Viscosity Fluids in Air
Cited by in corpus (16)
- Coalescence of bubbles and drops in an outer fluid
- Approach and Coalescence of Liquid Drops in Air
- Universality in coalescence of polymeric fluid drops
- A Parametric Study of the Coalescence of Liquid Drops in a Viscous Gas
- Air Entrainment in Dynamic Wetting: Knudsen Effects and the Influence of Ambient Air Pressure
- The Dynamics of Liquid Drops Coalescing in the Inertial Regime
- Rheocoalescence: Relaxation time through coalescence of droplets
- Coalescence of surfactant-laden droplets
- Coalescence of Islands in Freely-Suspended Smectic Films
- The Coalescence of Liquid Drops in a Viscous Fluid: Interface Formation Model
- Dynamics of viscous coalescing droplets in a saturated vapor phase
- Molecular dynamics simulation of the coalescence of surfactant-laden droplets
- Coalescence of sessile aqueous droplets laden with surfactant
- Coalescence of sessile polymer droplets: A molecular dynamics study
- Collision of surfactant-laden droplets: insights from molecular dynamics simulation
- The Formation of a Bubble from a Submerged Orifice